If F is the force acting on the test charge qo, the electric field intensity E * would be given by i 12 A. E = F- qo B. E = F/qo C. E = F+ qo D. E = qo/F The charge Q located at the origin in free space to produces a field for * which Ez = 1 kV/m at point P(-3, 2,-1) is equal to a) 6.102*10^(-6) C O b) 5.528*10^(-6) C C) 5.825*10^(-6) C d) 4.352*10^(-6) c O

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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which one is correct please.
If F is the force acting on the test charge qo, the electric field intensity E
* would be given by
Lai 12
A. E = F- qo
B. E = F/qo
C. E = F+ qo
D. E = qo/F
The charge Q located at the origin in free space to produces a field for
* which Ez = 1 kV/m at point P(-3, 2,-1) is equal to
bi 12
a) 6.102*10^(-6) C
b) 5.528*10^(-6) C
C) 5.825*10^(-6) c
d) 4.352*10^(-6) C
Transcribed Image Text:If F is the force acting on the test charge qo, the electric field intensity E * would be given by Lai 12 A. E = F- qo B. E = F/qo C. E = F+ qo D. E = qo/F The charge Q located at the origin in free space to produces a field for * which Ez = 1 kV/m at point P(-3, 2,-1) is equal to bi 12 a) 6.102*10^(-6) C b) 5.528*10^(-6) C C) 5.825*10^(-6) c d) 4.352*10^(-6) C
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